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NS2B 共因子结合到 Kyasanur 森林病病毒 NS3 蛋白酶引起的结构修饰。

Structural Modifications Introduced by NS2B Cofactor Binding to the NS3 Protease of the Kyasanur Forest Disease Virus.

机构信息

Laboratory of Computational Modeling of Drugs, Higher Medical & Biological School, South Ural State University, 454080 Chelyabinsk, Russia.

ICAR-National Institute of Veterinary Epidemiology and Disease Informatics, Bengaluru 560064, Karnataka, India.

出版信息

Int J Mol Sci. 2023 Jun 30;24(13):10907. doi: 10.3390/ijms241310907.

Abstract

Kyasanur Forest Disease virus (KFDV), a neglected human pathogenic virus, is a that causes severe hemorrhagic fever in humans. KFDV is transmitted to humans by the bite of the hard tick (), which acts as a reservoir of KFDV. The recent expansion of the endemic area of KFDV is of concern and requires the development of new preventive measures against KFDV. Currently, there is no antiviral therapy against KFDV, and the existing vaccine has limited efficacy. To develop a new antiviral therapy against KFDV, we focused on the nonstructural proteins NS2B and NS3 of KFDV, which are responsible for serine protease activity. Viral proteases have shown to be suitable therapeutic targets in the development of antiviral drugs against many diseases. However, success has been limited in flaviviruses, mainly because of the important features of the active site, which is flat and highly charged. In this context, the present study focuses on the dynamics of NS2B and NS3 to identify potential allosteric sites in the NS2B/NS3 protease of KDFV. To our knowledge, there are no reports on the dynamics of NS2B and NS3 in KFDV, and the crystal structure of the NS2B/NS3 protease of KFDV has not yet been solved. Overall, we created the structure of the NS2B/NS3 protease of KFDV using AlphaFold and performed molecular dynamics simulations with and without NS2B cofactor to investigate structural rearrangements due to cofactor binding and to identify alternative allosteric sites. The identified allosteric site is promising due to its geometric and physicochemical properties and druggability and can be used for new drug development. The applicability of the proposed allosteric binding sites was verified for the best-hit molecules from the virtual screening and MD simulations.

摘要

基孔肯雅热病毒(KFDV)是一种被忽视的人类致病病毒,属于黄病毒科,可引起人类严重的出血热。KFDV 通过硬蜱()的叮咬传播给人类,硬蜱是 KFDV 的储存宿主。KFDV 流行区的最近扩张令人担忧,需要开发针对 KFDV 的新预防措施。目前,针对 KFDV 尚无抗病毒疗法,现有的疫苗效力有限。为了开发针对 KFDV 的新抗病毒疗法,我们专注于 KFDV 的非结构蛋白 NS2B 和 NS3,它们负责丝氨酸蛋白酶活性。病毒蛋白酶已被证明是针对许多疾病开发抗病毒药物的合适治疗靶点。然而,在黄病毒中,成功的例子很少,主要是因为活性位点的重要特征,即平坦且带高电荷。在这种情况下,本研究侧重于 NS2B 和 NS3 的动力学,以确定 KDFV 的 NS2B/NS3 蛋白酶中的潜在变构位点。据我们所知,目前尚无关于 KFDV 中 NS2B 和 NS3 的动力学的报道,并且 KFDV 的 NS2B/NS3 蛋白酶的晶体结构尚未解决。总的来说,我们使用 AlphaFold 构建了 KFDV 的 NS2B/NS3 蛋白酶的结构,并进行了有和没有 NS2B 辅助因子的分子动力学模拟,以研究由于辅助因子结合引起的结构重排,并确定替代变构位点。所鉴定的变构位点具有良好的几何形状和物理化学性质,并且具有成药性,可用于新药开发。通过虚拟筛选和 MD 模拟验证了所提出的变构结合位点对最佳命中分子的适用性。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/9199/10342073/7d69a4109715/ijms-24-10907-g001.jpg

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